Centro de Investigação em Química (CIQ-UP), Grupo de Ciências Biológicas e Bioanalíticas, Faculdade de Farmácia de Coimbra, Polo das Ciências da Saúde, 3000-432 Coimbra, Portugal.
J Fluoresc. 2011 Sep;21(5):1987-96. doi: 10.1007/s10895-011-0899-y. Epub 2011 May 24.
The performance of multivariate curve resolution (MCR-ALS) to decompose sets of excitation emission matrices of fluorescence (EEM) of nanocomposite materials used as analytical sensors was assessed. The two fluorescent nanocomposite materials were: NH(2)-polyethylene glycol (PEG200) functionalized carbon dots, sensible to aqueous Hg(II) (CD); and, CdS quantum dots attached to the dendrimer DAB, sensible to the ionic strength of the aqueous medium (CdS-DAB). The structures of these sets of EEM, obtained as function of the Hg(II) concentration and ionic strength, are characterized by collinear properties (CD) and non-linear spectral variations (CdS-DAB). MCR-ALS was able to detect that the source of the collinearities is the presence of different size CD that show similar affinity towards Hg(II). Moreover, MCR-ALS was able to model the non-linear spectral variations of the CdS-DAB that are induced by varying ionic strength. The chemometric pre-processing of the fluorescent data sets using soft-modelling multivariate curve resolution like MCR-ALS is a critical step to transform these nanocomposites with interesting fluorescent proprieties into analytical useful nanosensors.
评估了多元曲线分辨(MCR-ALS)在分解荧光(EEM)纳米复合材料激发发射矩阵的应用性能,这些纳米复合材料被用作分析传感器。两种荧光纳米复合材料为:NH(2)-聚乙二醇(PEG200)功能化碳点,对水溶液中的 Hg(II)(CD)敏感;以及接枝到树枝状大分子 DAB 的 CdS 量子点,对水介质的离子强度敏感(CdS-DAB)。这些 EEM 集的结构作为 Hg(II)浓度和离子强度的函数获得,具有共线性特性(CD)和非线性光谱变化(CdS-DAB)。MCR-ALS 能够检测到共线性的来源是存在不同尺寸的 CD,它们对 Hg(II)表现出相似的亲和力。此外,MCR-ALS 能够模拟由离子强度变化引起的 CdS-DAB 的非线性光谱变化。使用软建模多元曲线分辨(如 MCR-ALS)对荧光数据集进行化学计量预处理是将这些具有有趣荧光性能的纳米复合材料转化为分析有用的纳米传感器的关键步骤。